Infraslow Dynamic Patterns in Human Cortical Networks Track a Spectrum of External to Internal Attention

IF 3.3 2区 医学 Q1 NEUROIMAGING Human Brain Mapping Pub Date : 2025-02-21 DOI:10.1002/hbm.70049
Harrison Watters, Aleah Davis, Abia Fazili, Lauren Daley, T. J. LaGrow, Eric H. Schumacher, Shella Keilholz
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Abstract

Early efforts to understand the human cerebral cortex focused on localization of function, assigning functional roles to specific brain regions. More recent evidence depicts the cortex as a dynamic system, organized into flexible networks with patterns of spatiotemporal activity corresponding to attentional demands. In functional MRI (fMRI), dynamic analysis of such spatiotemporal patterns is highly promising for providing non-invasive biomarkers of neurodegenerative diseases and neural disorders. However, there is no established neurotypical spectrum to interpret the burgeoning literature of dynamic functional connectivity from fMRI across attentional states. In the present study, we apply dynamic analysis of network-scale spatiotemporal patterns in a range of fMRI datasets across numerous tasks including a left–right moving dot task, visual working memory tasks, congruence tasks, multiple resting state datasets, mindfulness meditators, and subjects watching TV. We find that cortical networks show shifts in dynamic functional connectivity across a spectrum that tracks the level of external to internal attention demanded by these tasks. Dynamics of networks often grouped into a single task positive network show divergent responses along this axis of attention, consistent with evidence that definitions of a single task positive network are misleading. Additionally, somatosensory and visual networks exhibit strong phase shifting along this spectrum of attention. Results were robust on a group and individual level, further establishing network dynamics as a potential individual biomarker. To our knowledge, this represents the first study of its kind to generate a spectrum of dynamic network relationships across such an axis of attention.

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人类大脑皮层网络中的次低动态模式可追踪从外部到内部的注意力频谱
了解人类大脑皮层的早期努力集中在功能定位上,将功能角色分配到特定的大脑区域。最近的证据表明,大脑皮层是一个动态系统,组织成灵活的网络,其时空活动模式与注意力需求相对应。在功能磁共振成像(fMRI)中,这种时空模式的动态分析对于提供神经退行性疾病和神经紊乱的非侵入性生物标志物是非常有希望的。然而,目前还没有成熟的神经典型谱来解释fMRI在注意状态下动态功能连接的新兴文献。在本研究中,我们应用动态分析网络尺度的时空模式在一系列的fMRI数据集跨越多个任务,包括左右移动点任务,视觉工作记忆任务,一致性任务,多静息状态数据集,正念冥想者,和受试者看电视。我们发现,皮层网络显示出动态功能连接的变化,这种变化可以追踪这些任务所需的外部到内部注意力的水平。动态网络通常被分为一个单一的任务积极网络,在这个注意轴上表现出不同的反应,这与单一任务积极网络的定义具有误导性的证据是一致的。此外,体感和视觉网络沿这一注意力谱表现出强烈的相移。结果在群体和个体水平上都是稳健的,进一步确立了网络动力学作为潜在的个体生物标志物。据我们所知,这是同类研究中首次在这样一个关注轴上生成动态网络关系谱。
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来源期刊
Human Brain Mapping
Human Brain Mapping 医学-核医学
CiteScore
8.30
自引率
6.20%
发文量
401
审稿时长
3-6 weeks
期刊介绍: Human Brain Mapping publishes peer-reviewed basic, clinical, technical, and theoretical research in the interdisciplinary and rapidly expanding field of human brain mapping. The journal features research derived from non-invasive brain imaging modalities used to explore the spatial and temporal organization of the neural systems supporting human behavior. Imaging modalities of interest include positron emission tomography, event-related potentials, electro-and magnetoencephalography, magnetic resonance imaging, and single-photon emission tomography. Brain mapping research in both normal and clinical populations is encouraged. Article formats include Research Articles, Review Articles, Clinical Case Studies, and Technique, as well as Technological Developments, Theoretical Articles, and Synthetic Reviews. Technical advances, such as novel brain imaging methods, analyses for detecting or localizing neural activity, synergistic uses of multiple imaging modalities, and strategies for the design of behavioral paradigms and neural-systems modeling are of particular interest. The journal endorses the propagation of methodological standards and encourages database development in the field of human brain mapping.
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